67 research outputs found
Quantum Criticality via Magnetic Branes
- Author
- A. Donos
- A. Donos
- A.J. Millis
- A.J. Millis
- A.W. Rost
- C. Fefferman
- C.P. Herzog
- D. Anninos
- D.E. Kharzeev
- D.T. Son
- E. D’Hoker
- E. D’Hoker
- E. D’Hoker
- E. D’Hoker
- E. D’Hoker
- E. Fradkin
- E. Witten
- G. Lifschytz
- G. Policastro
- H. Braviner
- H. Liu
- H.v. Lohneysen
- I. Heemskerk
- J. Boer de
- J.A. Hertz
- J.D. Brown
- J.M. Maldacena
- J.P. Gauntlett
- K. Balasubramanian
- K. Goldstein
- N. Ogawa
- N. Seiberg
- O. Aharony
- S. Haro de
- S. Kachru
- S. Nakamura
- S. Sachdev
- S.A. Hartnoll
- S.A. Hartnoll
- S.K. Domokos
- S.S. Gubser
- T. Andrade
- T. Faulkner
- T. Faulkner
- T. Giamarchi
- V. Balasubramanian
- V. Balasubramanian
- V. Oganesyan
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 09/08/2012
- Field of study
Holographic methods are used to investigate the low temperature limit,
including quantum critical behavior, of strongly coupled 4-dimensional gauge
theories in the presence of an external magnetic field, and finite charge
density. In addition to the metric, the dual gravity theory contains a Maxwell
field with Chern-Simons coupling. In the absence of charge, the magnetic field
induces an RG flow to an infrared AdS3×R2 geometry, which is
dual to a 2-dimensional CFT representing strongly interacting fermions in the
lowest Landau level. Two asymptotic Virasoro algebras and one chiral Kac-Moody
algebra arise as {\sl emergent symmetries} in the IR. Including a nonzero
charge density reveals a quantum critical point when the magnetic field reaches
a critical value whose scale is set by the charge density. The critical theory
is probed by the study of long-distance correlation functions of the boundary
stress tensor and current. All quantities of major physical interest in this
system, such as critical exponents and scaling functions, can be computed
analytically. We also study an asymptotically AdS6 system whose magnetic
field induced quantum critical point is governed by a IR Lifshitz geometry,
holographically dual to a D=2+1 field theory. The behavior of these holographic
theories shares important similarities with that of real world quantum critical
systems obtained by tuning a magnetic field, and may be relevant to materials
such as Strontium Ruthenates.Comment: To appear in Lect. Notes Phys. "Strongly interacting matter in
magnetic fields" (Springer), edited by D. Kharzeev, K. Landsteiner, A.
Schmitt, H.-U. Ye
Ultra-sonografia para predição da composição da carcaça de bovinos jovens
- Author
- ALLEONI G.F.
- André Alves de Souza
- Antônio Carlos Silveira
- BAILEY C.
- BERGEN R.D.
- BULLOCK K.D
- Daniela Cristina Morales Burini
- DHUYVETTER J.
- FAULKNER D.B.
- FISHER A.
- FONTES C.A.A.
- FORREST R.J.
- GRIFFIN D.B.
- HAMLIN K.E.
- HANKINS O.G.
- HASSEN A.
- Henrique Nunes de Oliveira
- HERRING W.O.
- HOPPER T.H.
- JORGE A.M.
- JORGE A.M.
- LANNA D.P.D.
- LANNA D.P.D.
- Liliane Suguisawa
- LUCHIARI FILHO A.
- LUSH J.L.
- MAY S.G.
- Mário de Beni Arrigoni
- PERRY T.C.
- SUGUISAWA L.
- WALDNER D.N.
- WILSON D.E.
- Wilson Roberto Soares Mattos
- Publication venue
- 'FapUNIFESP (SciELO)'
- Publication date
- Field of study
Search for jet extinction in the inclusive jet-pT spectrum from proton-proton collisions at s=8 TeV
- Author
- Abbaneo D.Cv
- Abbiendi G.Bc
- Abbrescia M.Bb
- Abdullin S.Dz
- Abdulsalam A.Ax
- Acosta D.Ea
- Acosta J.G.En
- Adair A.Ey
- Adam W.B
- Adams M.R.Ee
- Adams T.Ec
- Adiguzel A.Dc
- Adler V.G
- Adzic P.Cq
- Afanasiev S.Ci
- Agapitos A.Ao
- Agram J.-L.ad
- Ahmad A.Cf
- Ahmad M.Cf
- Ahuja S.Av
- Akchurin N.Fe
- Akgun B.Ey
- Akin I.V.Dd
- Albajar C.Cs
- Albayrak E.A.Ef
- Albergo S.Bd
- Albrow M.Dz
- Alcaraz Maestre J.Cr
- Aldaya Martin M.Al
- Alderweireldt S.D
- Aleksandrov A.M
- Alexander J.Dx
- Alimena J.Do
- Alverson G.Eq
- Alves G.A.J
- Amapane N.Bo
- Amsler C.Cy
- Anagnostou G.An
- Anastassov A.Er
- Anderson J.Dz
- Andrea J.Ad
- Andreev V.Cn
- Andreev Y.Cl
- Andrews W.Ds
- Androsov K.Bm
- Antonelli L.Et
- Antunovic Z.S
- Apanasevich L.Ee
- Apollinari G.Dz
- Appelt E.Ff
- Apresyan A.Du
- Apyan A.El
- Arcidiacono R.Bo
- Arenton M.W.Fg
- Argiro S.Bo
- Arneodo M.Bo
- Arora S.Fb
- Asavapibhop B.Db
- Asawatangtrakuldee C.P
- Asin I.Ak
- Askew A.Ec
- Aslanoglou X.Ap
- Assran Y.W
- Ata M.Ai
- Attikis A.U
- Aubin A.Ad
- Auffray E.Cv
- Autermann C.Ah
- Auzinger G.Cv
- Avdeeva E.Eo
- Avery P.Ea
- Avetisyan A.Dn
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- Azarkin M.Cn
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- Aziz T.Ay
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- Azzolini V.Dv
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- Banerjee S.Ay
- Bansal M.D
- Bansal S.D
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- De Jesus Damiao D.K
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- De Lentdecker G.F
- De Mattia M.Ew
- De Oliveira Martins C.K
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- Gurpinar E.Dc
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- Milenovic P.Ea
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- Pozdnyakov A.Er
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- Prado Da Silva W.L.K
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- Pugliese G.Bb
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- Python Q.E
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- Quittnat M.Cx
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- Racz A.Cv
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- Rahatlou S.Bn
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- Safarzadeh B.Az
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- Santanastasio F.Bn
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- Santocchia A.Bl
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- Saoulidou N.Ao
- Sarangi T.Fi
- Sarkar S.Aw
- Sauvan J.B.Ac
- Savin A.Fi
- Savoy-Navarro A.Bm
- Savrin V.Co
- Saxena P.Ak
- Scarborough T.Dl
- Sch\ue4fer C.Cv
- Sch\uf6fbeck R.B
- Schael S.Ah
- Schettler H.Al
- Schizzi A.Bp
- Schleper P.Al
- Schlieckau E.Al
- Schmidt A.Al
- Schmidt R.Ak
- Schmitt M.Er
- Schmitz S.A.Ai
- Schnetzer S.Fb
- Schoerner-Sadenius T.Ak
- Schr\uf6der M.Ak
- Schwick C.Cv
- Scodellaro L.Cu
- Searle M.Dp
- Seez C.Dj
- Segala M.Do
- Seidel M.Al
- Seitz C.Ak
- Seixas J.Ci
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- Semenov S.Cm
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- Sexton-Kennedy E.Dz
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- Sharma V.Av
- Sharma V.Ds
- Sharp P.Dj
- Shchutska L.Ea
- Sheldon P.Ff
- Shepherd-Themistocleous C.H.Di
- Shi X.Ew
- Shipsey I.Ew
- Shmatov S.Cj
- Shoaib M.Cf
- Shrestha S.Ei
- Shrinivas A.Dr
- Shukla P.Ax
- Shumeiko N.C
- Siegrist P.Cv
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- Sikler F.Aq
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- Simonetto F.Bj
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- Skatchkov N.Cj
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- Smith V.J.Dh
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- Snigirev A.Co
- Snook B.Ff
- Snow G.R.Eo
- Snowball M.Ea
- Soares M.S.Cr
- Sobol A.Cp
- Soffi L.Bn
- Sogut K.Dc
- Soha A.Dz
- Sola V.Al
- Solano A.Bo
- Somalwar S.Fb
- Son D.C.Br
- Song S.Bt
- Sonnenschein L.Ai
- Sordini V.Af
- Sorokin P.Dg
- Spagnolo P.Bm
- Spalding W.J.Dz
- Spanier S.Fc
- Spannagel S.Ak
- Speer T.Do
- Sperka D.Dn
- Sphicas P.Cv
- Spiegel L.Dz
- Spiezia A.Bl
- Spiga D.Cv
- Spiridonov A.Cm
- Spiropulu M.Du
- Squillacioti P.Bm
- Squires M.Dp
- Srimanobhas N.Db
- St. John J.Dn
- St\uf6ckli F.El
- Stadie H.Al
- Stahl A.Aj
- Staiano A.Bo
- Starodumov A.Cx
- Steggemann J.Cv
- Steinbr\ufcck G.Al
- Stenson K.Dw
- Stephans G.S.F.El
- Stickland D.Eu
- Stieger B.Cv
- Stiliaris E.Ao
- Stober F.M.Am
- Stolin V.Cm
- Stolp D.Dp
- Stone R.Fb
- Stoye M.Cv
- Stoykova S.M
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- Strauss J.B
- Stringer R.Eh
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- Strom D.E
- Stuart D.Dt
- Stupak J.Ex
- Sturdy J.Fh
- Suarez Gonzalez J.C
- Suarez I.Fd
- Sudano E.Ds
- Sudhakar K.Ay
- Sudic L.T
- Sulak L.Dn
- Sulimov V.Ck
- Sultanov G.M
- Summers D.En
- Sumorok K.El
- Sumowidagdo S.Dr
- Sun W.Dx
- Sunar Cerci D.Dc
- Sung K.Er
- Surat U.E.Dd
- Suwonjandee N.Db
- Svintradze I.Ei
- Svyatkovskiy A.Ew
- Swain S.K.At
- Swanson J.Do
- Swartz M.Eg
- Symonds P.Dk
- Szillasi Z.Ar
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- Sznajder A.K
- Tabarelli de Fatis T.Bh
- Tadel M.Ds
- Takahashi M.Cx
- Takahashi Y.Cv
- Takasugi E.Dq
- Tali B.Dc
- Talvitie J.Aa
- Tambe N.Em
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- Tapper A.Dj
- Taroni S.Cy
- Tatarinov A.Fd
- Taurok A.B
- Tavernier S.E
- Taylor L.Dz
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- Tenchini R.Bm
- Teo W.D.Dx
- Teodorescu L.Dk
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- Tiko A.X
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- Torassa E.Bj
- Toropin A.Cl
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- Tosi N.Bc
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- Tourtchanovitch L.Cp
- Traczyk P.Bn
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- Treberer-Treberspurg W.B
- Treille D.Cv
- Tricomi A.Bd
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- Tripathi M.Dp
- Trocino D.Eq
- Trocsanyi Z.L.As
- Troendle D.Al
- Tropiano A.Be
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- Tsirou A.Cv
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- Tuominen E.Z
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- Van De Klundert M.D
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- Van Hove P.Ad
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- Ventura S.Bj
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- Yoo H.D.Ew
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- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2014
- Field of study
Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published articles title, journal citation, and DOI.The first search at the LHC for the extinction of QCD jet production is presented, using data collected with the CMS detector corresponding to an integrated luminosity of 10.7 fb−1 of proton-proton collisions at a center-of-mass energy of 8 TeV. The extinction model studied in this analysis is motivated by the search for signatures of strong gravity at the TeV scale (terascale gravity) and assumes the existence of string couplings in the strong-coupling limit. In this limit, the string model predicts the suppression of all high-transverse-momentum standard model processes, including jet production, beyond a certain energy scale. To test this prediction, the measured transverse-momentum spectrum is compared to the theoretical prediction of the standard model. No significant deficit of events is found at high transverse momentum. A 95% confidence level lower limit of 3.3 TeV is set on the extinction mass scale
First-order corrections to random-phase approximation GW
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- Publication venue
- 'American Physical Society (APS)'
- Publication date
- Field of study
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- Shah M.
- Shah P.
- Shah R.
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- Shaw J.A.
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- Ung S.K.A.
- Van Loo P.
- Vanloo S.
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- Weeden C.E.
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- Wilkinson K.A.
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- Wu Y.
- Young G.
- Young K.
- Yousaf N.
- Yuan Y.
- Zaccaria S.
- Zhai H.
- Zhang H.
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 20/04/2023
- Field of study
B cells are frequently found in the margins of solid tumours as organized follicles in ectopic lymphoid organs called tertiary lymphoid structures (TLS)1,2. Although TLS have been found to correlate with improved patient survival and response to immune checkpoint blockade (ICB), the underlying mechanisms of this association remain elusive1,2. Here we investigate lung-resident B cell responses in patients from the TRACERx 421 (Tracking Non-Small-Cell Lung Cancer Evolution Through Therapy) and other lung cancer cohorts, and in a recently established immunogenic mouse model for lung adenocarcinoma3. We find that both human and mouse lung adenocarcinomas elicit local germinal centre responses and tumour-binding antibodies, and further identify endogenous retrovirus (ERV) envelope glycoproteins as a dominant anti-tumour antibody target. ERV-targeting B cell responses are amplified by ICB in both humans and mice, and by targeted inhibition of KRAS(G12C) in the mouse model. ERV-reactive antibodies exert anti-tumour activity that extends survival in the mouse model, and ERV expression predicts the outcome of ICB in human lung adenocarcinoma. Finally, we find that effective immunotherapy in the mouse model requires CXCL13-dependent TLS formation. Conversely, therapeutic CXCL13 treatment potentiates anti-tumour immunity and synergizes with ICB. Our findings provide a possible mechanistic basis for the association of TLS with immunotherapy response
Whole-genome sequencing reveals host factors underlying critical COVID-19
- Author
- Abd Elghafar M.S.
- Abdel-Aziz M.
- Abdelrazik M.
- Abdollahi H.
- Abdullah T.
- Abecasis G.R.
- Abecasis G.R.
- Abedalthagafi M.
- Abel L.
- Abernathy C.
- Abraheem A.
- Abul-Husn N.S.
- Acquilini D.
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- Adeleye O.
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- Zöllner S.
- Åsvold B.O.
- Publication venue
- Springer Science and Business Media LLC
- Publication date
- 07/07/2022
- Field of study
Critical COVID-19 is caused by immune-mediated inflammatory lung injury. Host genetic variation influences the development of illness requiring critical care1 or hospitalization2,3,4 after infection with SARS-CoV-2. The GenOMICC (Genetics of Mortality in Critical Care) study enables the comparison of genomes from individuals who are critically ill with those of population controls to find underlying disease mechanisms. Here we use whole-genome sequencing in 7,491 critically ill individuals compared with 48,400 controls to discover and replicate 23 independent variants that significantly predispose to critical COVID-19. We identify 16 new independent associations, including variants within genes that are involved in interferon signalling (IL10RB and PLSCR1), leucocyte differentiation (BCL11A) and blood-type antigen secretor status (FUT2). Using transcriptome-wide association and colocalization to infer the effect of gene expression on disease severity, we find evidence that implicates multiple genes—including reduced expression of a membrane flippase (ATP11A), and increased expression of a mucin (MUC1)—in critical disease. Mendelian randomization provides evidence in support of causal roles for myeloid cell adhesion molecules (SELE, ICAM5 and CD209) and the coagulation factor F8, all of which are potentially druggable targets. Our results are broadly consistent with a multi-component model of COVID-19 pathophysiology, in which at least two distinct mechanisms can predispose to life-threatening disease: failure to control viral replication; or an enhanced tendency towards pulmonary inflammation and intravascular coagulation. We show that comparison between cases of critical illness and population controls is highly efficient for the detection of therapeutically relevant mechanisms of disease
Searches for electroweak neutralino and chargino production in channels with Higgs, Z, and W bosons in pp collisions at 8 TeV
- Author
- Abbaneo D.Cv
- Abbiendi G.Bc
- Abbrescia M.Bb
- Abdullin S.Dz
- Abdulsalam A.Ax
- Acosta D.Ea
- Acosta J.G.En
- Adair A.Ey
- Adam W.B
- Adams M.R.Ee
- Adams T.Ec
- Adiguzel A.Dc
- Adler V.G
- Adzic P.Cq
- Afanasiev S.Ci
- Agapitos A.Ao
- Agram J.-L.ad
- Ahmad A.Cf
- Ahmad M.Cf
- Ahuja S.Av
- Akchurin N.Fe
- Akgun B.Ey
- Akin I.V.Dd
- Albajar C.Cs
- Albayrak E.A.Ef
- Albergo S.Bd
- Albrow M.Dz
- Alcaraz Maestre J.Cr
- Aldaya Martin M.Al
- Alderweireldt S.D
- Aleksandrov A.M
- Alexander J.Dx
- Alimena J.Do
- Alverson G.Eq
- Alves G.A.J
- Amapane N.Bo
- Amsler C.Cy
- Anagnostou G.An
- Anastassov A.Er
- Anderson J.Dz
- Andrea J.Ad
- Andreev V.Cn
- Andreev Y.Cl
- Andrews W.Ds
- Androsov K.Bm
- Antonelli L.Et
- Antunovic Z.S
- Apanasevich L.Ee
- Apollinari G.Dz
- Appelt E.Ff
- Apresyan A.Du
- Apyan A.El
- Arcidiacono R.Bo
- Arenton M.W.Fg
- Argiro S.Bo
- Arneodo M.Bo
- Arora S.Fb
- Asavapibhop B.Db
- Asawatangtrakuldee C.P
- Asin I.Ak
- Askew A.Ec
- Aslanoglou X.Ap
- Assran Y.W
- Ata M.Ai
- Attikis A.U
- Aubin A.Ad
- Auffray E.Cv
- Autermann C.Ah
- Auzinger G.Cv
- Avdeeva E.Eo
- Avery P.Ea
- Avetisyan A.Dn
- Avila C.Q
- Azarkin M.Cn
- Azhgirey I.Cp
- Aziz T.Ay
- Azzi P.Bj
- Azzolini V.Dv
- Azzurri P.Bm
- B\ue4ni L.Cx
- B\uf6ser C.Am
- Baarmand M.M.Ed
- Babb J.Dr
- Baber M.Dj
- Bacchetta N.Bj
- Bachmair F.Cx
- Bachtis M.Cv
- Baden A.Ek
- Baffioni S.Ac
- Bagliesi G.Bm
- Baillon P.Cv
- Bainbridge R.Dj
- Bakhshiansohi H.Az
- Bakirci M.N.Dc
- Ball A.H.Cv
- Ban Y.P
- Banerjee S.Aw
- Banerjee S.Ay
- Bansal M.D
- Bansal S.D
- Barbagli G.Be
- Barberis E.Eq
- Barbieri R.El
- Barbone L.Bb
- Barfuss A.F.Ei
- Bargassa P.Ci
- Barge D.Dt
- Baringer P.Eh
- Barker A.Fb
- Barnes V.E.Ew
- Barnett B.A.Eg
- Barney D.Cv
- Barone L.Bn
- Barth C.Am
- Bartosik N.Ak
- Basegmez S.H
- Battilana C.Cr
- Bauer G.El
- Bauerdick L.A.T.Dz
- Baumgartel D.Eq
- Baus C.Am
- Bayshev I.Cp
- Bazterra V.E.Ee
- Bean A.Eh
- Beauceron S.Af
- Beaudette F.Ac
- Beaupere N.Af
- Beernaert K.G
- Behnamian H.Az
- Behr J.Ak
- Behrenhoff W.Ak
- Behrens U.Ak
- Beir\ue3o Da Cruz E Silva C.Ci
- Belforte S.Bp
- Beliy N.I
- Belknap D.A.Fi
- Bell A.J.Ak
- Bell K.W.Di
- Bellan R.Bo
- Bellato M.Bj
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- Beluffi C.H
- Belyaev A.Co
- Belyaev A.Di
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- Benedetti D.Ew
- Benelli G.Eh
- Benhabib L.Cv
- Beni N.Ar
- Benitez J.F.Cv
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- Benussi L.Bf
- Benvenuti A.C.Bc
- Beranek S.Ah
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- Bernardini J.Bm
- Bernet C.Cv
- Berry D.Ee
- Berry E.Do
- Berryhill J.Dz
- Bertl W.Cw
- Besancon M.Ab
- Betchart B.Ez
- Bethani A.Ak
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- Bhardwaj A.Av
- Bhat P.C.Dz
- Bhatnagar V.Au
- Bhattacharya S.Aw
- Bhattacharya S.Do
- Bhawandeep U.Au
- Bhowmik S.Ay
- Bialkowska H.Cg
- Bian J.G.O
- Bianchi G.Cv
- Bianchini L.Cx
- Bianco S.Bf
- Biasini M.Bl
- Biasotto M.Bj
- Biino C.Bo
- Bilei G.M.Bl
- Bilin B.Dd
- Bilki B.Ef
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- Bloch D.Ad
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- Botta C.Cv
- Boudoul G.Af
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- Bourilkov D.Ea
- Boutle S.Fg
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- Brochet S.Af
- Brodski M.Ai
- Brom J.-M.ad
- Brona G.Ch
- Brooke J.J.Dh
- Brown R.M.Di
- Brownson E.Ev
- Brun H.Ct
- Bruner C.Eh
- Bruno G.H
- Buchmann M.A.Cx
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- Bucinskaite I.Ee
- Bunin P.Cj
- Bunkowski K.Ch
- Bunn J.Du
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- Burgmeier A.Ak
- Burkett K.Dz
- Burt K.Dr
- Burton D.Dj
- Busson P.Ac
- Busza W.El
- Butler J.N.Dz
- Butler P.H.Ce
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- Bylsma B.Et
- Cabrillo I.J.Cu
- Caebergs T.I
- Caillol C.F
- Caiulo D.Bm
- Cakir A.Ak
- Calabria C.Bb
- Calamba A.Dv
- Calderon De La Barca Sanchez M.Dp
- Calderon A.Cu
- Cali I.A.El
- Calligaris L.Ak
- Calvert B.Ek
- Calvo E.Cr
- Campagnari C.Dt
- Campanini R.Bc
- Campbell A.Ak
- Camporesi T.Cv
- Candelise V.Bp
- Canelli M.F.Cy
- Cankocak K.Df
- Capiluppi P.Bc
- Cappello G.Bd
- Cardaci M.Cz
- Carlsmith D.Fi
- Carlson B.Dv
- Carrillo Montoya C.A.Af
- Carrillo Moreno S.Ca
- Cartiglia N.Bo
- Carvalho W.K
- Carver M.Ea
- Casal B.Cx
- Casarsa M.Bp
- Casasso S.Bo
- Casimiro Linares E.Cc
- Castaldi R.Bm
- Castello R.H
- Castilla-Valdez H.Bz
- Castro A.Bc
- Caudron A.H
- Cavallari F.Bn
- Cavallo F.R.Bc
- Cavallo N.Bi
- Cavanaugh R.Ee
- Ceard L.H
- Centis Vignali M.Al
- Cepeda M.Fi
- Cerati G.B.Ds
- Cerci S.Dc
- Cerminara G.Cv
- Cerrada M.Cr
- Chabert E.C.Ad
- Chakaberia I.Ei
- Chamizo Llatas M.Cr
- Chan K.M.Es
- Chan M.El
- Chang P.Da
- Chang S.Bq
- Chang Y.H.Da
- Chang Y.W.Da
- Chanon N.Cx
- Chao Y.Da
- Chaparro Sierra L.F.Q
- Charaf O.Dm
- Charlot C.Ac
- Chasco M.Eq
- Chasserat J.Af
- Chatterjee A.Dx
- Chatterjee K.Aw
- Chatterjee R.M.Ay
- Chauhan S.Dp
- Chen G.M.O
- Chen H.S.O
- Chen K.F.Da
- Chen K.H.Cz
- Chen M.O
- Chen P.H.Da
- Chen Y.Du
- Cheng T.Ea
- Cherepanov V.Aj
- Chertok M.Dp
- Cheung H.W.K.Dz
- Chhibra S.S.Bb
- Chierici R.Af
- Chinellato J.K
- Chiochia V.Cy
- Chiorboli M.Bd
- Chlebana F.Dz
- Choi M.Bv
- Choi S.Bu
- Choi Y.Bw
- Choi Y.K.Bw
- Chou J.P.Fb
- Choudhary B.C.Av
- Choudhury S.Ak
- Christopher G.Do
- Chu J.Dx
- Chwalek T.Am
- Ciangottini D.Bl
- Ciesielski R.Fa
- Cihangir S.Dz
- Cimmino A.G
- Ciocci M.A.Bm
- Cittolin S.Ds
- Ciulli V.Be
- Civinini C.Be
- Claes D.R.Eo
- Clare R.Dr
- Clarida W.Ef
- Clarke C.Fg
- Clement E.Dh
- Clerbaux B.F
- Cockerill D.J.A.Di
- Codispoti G.Bc
- Colafranceschi S.Cv
- Colaleo A.Bb
- Cole J.E.Dk
- Colino N.Cr
- Collard C.Ad
- Colling D.Dj
- Contardo D.Af
- Conte E.Ad
- Contreras-Campana C.Fb
- Contreras-Campana E.Fb
- Conway J.Dp
- Conway R.Dp
- Cooper S.I.Dm
- Cornelis T.D
- Correa Martins Junior M.J
- Cossutti F.Bp
- Costa M.Bo
- Costa S.Bd
- Costantini S.G
- Costanza F.Ak
- Couderc F.Ab
- Coughlan J.A.Di
- Cousins R.Dq
- Covarelli R.Ez
- Cowden C.Fe
- Cox B.Fg
- Cox P.T.Dp
- Creanza D.Bb
- Cremaldi L.M.En
- Cripps N.Dj
- Crucy S.G
- Cuevas J.Ct
- Cuffiani M.Bc
- Cumalat J.P.Dw
- Curry D.Ea
- Cussans D.Dh
- Cust\uf3dio A.K
- Cutajar M.Dj
- Cutts D.Do
- Cwiok M.Ch
- Czellar S.Ar
- D\u2019Agnolo R.T.Ds
- D\u2019Alessandro R.Be
- D\u2019Alfonso M.Cv
- D\u2019Enterria D.Cv
- D\u2019Hondt J.E
- D\u2019Imperio G.Bn
- D\ufcnser M.Cx
- Da Costa E.M.K
- Da Silveira G.G.H
- Dabrowski A.Cv
- Daci N.E
- Dahmes B.Em
- Dahms T.Ac
- Dalchenko M.Ac
- Dall\u2019Osso M.Bj
- Dallavalle G.M.Bc
- Damgov J.Fe
- Danielson T.Dt
- Das S.Ea
- Daskalakis G.An
- Dasu S.Fi
- Daubie E.I
- Dauncey P.Dj
- David A.Cv
- Davies G.Dj
- de Barbaro P.Ez
- De Benedetti A.Em
- De Boer W.Am
- De Cosa A.Cy
- De Filippis N.Bb
- De Gruttola M.Ea
- De Guio F.Cv
- De Jesus Damiao D.K
- De La Cruz B.Cr
- De La Cruz-Burelo E.Bz
- De Lentdecker G.F
- De Mattia M.Ew
- De Oliveira Martins C.K
- De Palma M.Bb
- De Roeck A.Cv
- de Troc\uf3niz J.F.Cs
- De Visscher S.Cv
- De Wolf E.A.D
- Degano A.Bo
- Deisher A.Cx
- Deiters K.Cw
- Dejardin M.Ab
- Del Re D.Bn
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- Dell\u2019Orso R.Bm
- Della Negra M.Dj
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- Demaria N.Bo
- Demina R.Ez
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- Demortier L.Fa
- Denegri D.Ab
- Depasse P.Af
- Dermenev A.Cl
- Descroix A.Am
- Dewanjee R.K.Ay
- Dhingra N.Do
- Di Giovanni G.P.Ea
- Di Guida S.Bi
- Di Marco E.Du
- Di Matteo L.El
- Diamond B.Ec
- Diemoz M.Bn
- Dierlamm A.Am
- Dietz C.Da
- Dietz-Laursonn E.Ai
- Diez Pardos C.Ak
- Dildick S.G
- Dilsiz K.Ef
- Dimitrov A.N
- Dinardo M.E.Bh
- Dishaw A.Dt
- Dissertori G.Cx
- Dittmann J.Dl
- Dittmar M.Cx
- Dittmer S.Dx
- Dobrzynski L.Ac
- Dobson M.Cv
- Dobur D.F
- Dodd L.Fi
- Dogra S.L
- Dolen J.Ep
- Dom\uednguez V\ue1zquez D.Cr
- Dominguez A.Eo
- Dominik W.Ch
- Donato S.Bm
- Doneg\ue0 M.Cx
- Dooling S.Ak
- Dordevic M.Cv
- Dorigo T.Bj
- Dorland T.Ak
- Doroba K.Ch
- Dosselli U.Bj
- Dozen C.Dc
- Draeger A.R.Al
- Dragicevic M.B
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- Driga O.Eu
- Drozdetskiy A.Es
- du Pree T.H
- Du R.O
- Duarte Campderros J.Cu
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- Dudero P.R.Fe
- Dugad S.Ay
- Duggan D.Fb
- Dumanoglu I.Dc
- Dunne P.Dj
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- Dutta S.Aw
- Dutta V.El
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- Eerola P.Y
- Eggert N.Dx
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- El Mamouni H.Af
- Eller P.Cx
- Elliott-Peisert A.Cv
- Ellison J.Dr
- Elmer P.Eu
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- Fabjan C.B
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- Fasanella D.Bc
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- Fiorendi S.Bh
- Fiori F.Bm
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- Folgueras S.Ct
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- Forthomme L.H
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- Frueboes T.Cg
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- Gerber C.E.Ee
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- Ocalan K.Dd
- Ocampo Rios A.A.G
- Ochando C.Ac
- Ochesanu S.D
- Odell N.Er
- Ogul H.Ef
- Oh Y.D.Br
- Ojalvo I.Fi
- Olaiya E.Di
- Olbrechts A.E
- Oliveros S.En
- Olivito D.Ds
- Olschewski M.Ai
- Olsen J.Eu
- Olszewski M.Ch
- Onel Y.Ef
- Onengut G.Dc
- Oreshkin V.Ck
- Organtini G.Bn
- Orimoto T.Eq
- Orsini L.Cv
- Ortona G.Bo
- Osipenkov I.Fd
- Ostapchuk A.Ah
- Ott J.Al
- Ozdemir K.Dc
- Ozok F.Ef
- Ozturk S.Dc
- P\ue9rez-Calero Yzquierdo A.Cr
- Pacher L.Bo
- Padeken K.Ai
- Padhi S.Ds
- Padley B.P.Ey
- Padula S.S.L
- Paganini P.Ac
- Pagano D.H
- Paganoni M.Bh
- Pakhotin Y.Fd
- Paktinat Mehdiabadi S.Az
- Palichik V.Cj
- Palinkas J.Ar
- Palla F.Bm
- Palmer C.Ds
- Panagiotou A.Ao
- Pandolfi F.Cx
- Pant L.M.Ax
- Panwalkar S.Fb
- Paoletti S.Be
- Paolucci P.Bi
- Papacz P.Ai
- Papadopoulos I.Ap
- Pape L.Cv
- Paradas E.Ap
- Paramatti R.Bn
- Paramesvaran S.Dh
- Parashar N.Ex
- Parida B.Ay
- Park H.Br
- Park I.C.Bv
- Park M.Fb
- Park S.Bv
- Park S.K.Bu
- Pashenkov A.Cl
- Pastika N.Em
- Pastrone N.Bo
- Patel R.Fb
- Patterson J.R.Dx
- Paulini M.Dv
- Paus C.El
- Pauss F.Cx
- Pavlov B.N
- Pazzini J.Bj
- Pearson T.Es
- Pedraza I.Cb
- Pedrini D.Bh
- Pedro K.Ek
- Peiffer T.Al
- Pela J.Dj
- Pellett D.Dp
- Pelliccioni M.Bo
- Peltola T.Z
- Pena C.Du
- Penzo A.Ef
- Perchalla L.Aj
- Perelygin V.Cj
- Perera L.En
- Perez E.Cv
- Perieanu A.Ah
- Perloff A.Fd
- Perni\ue8 L.F
- Perrey H.Ak
- Perries S.Af
- Perrini L.H
- Perrotta A.Bc
- Perrozzi L.Cv
- Perry T.Fi
- Peruzzi M.Cx
- Pesaresi M.Dj
- Petkov P.N
- Petrakou E.Da
- Petridis K.Dj
- Petrilli A.Cv
- Petrillo G.Ez
- Petrov V.Cp
- Petrucciani G.Cv
- Petrushanko S.Co
- Petyt D.Di
- Pfeiffer A.Cv
- Piccolo D.Bf
- Piedra Gomez J.Cu
- Pieri M.Ds
- Pierini M.Cv
- Pierro G.A.Fi
- Pietsch N.Al
- Pilot J.Dp
- Pimi\ue4 M.Cv
- Pin A.H
- Pinna Angioni G.L.Bo
- Piotrzkowski K.H
- Piparo D.Cv
- Piperov S.M
- Pirou\ue9 P.Eu
- Pitzl D.Ak
- Placakyte R.Ak
- Plagge M.Cv
- Planer M.Es
- Plestina R.O
- Poehlsen J.Al
- Poehlsen T.Al
- Pol M.E.J
- Polatoz A.Dc
- Polese G.Fi
- Polic D.R
- Poll A.Dh
- Pollack B.Er
- Pompili A.Bb
- Pooth O.Aj
- Popov A.H
- Popov V.Cm
- Potenza A.Bo
- Potenza R.Bd
- Pozdnyakov A.Er
- Pozzobon N.Bj
- Prado Da Silva W.L.K
- Primavera F.Bc
- Prokofyev O.Dz
- Prosper H.Ec
- Psallidas A.An
- Ptochos F.U
- Puerta Pelayo J.Cr
- Pugliese G.Bb
- Puigh D.Et
- Puljak I.R
- Python Q.E
- Qian S.J.P
- Quan X.Eu
- Quast G.Am
- Quertenmont L.H
- Quintario Olmeda A.Cr
- Quittnat M.Cx
- R\uf6cker S.Am
- Rabady D.B
- Rabbertz K.Am
- Racz A.Cv
- Radburn-Smith B.C.Ew
- Radi A.W
- Radogna R.Bb
- Ragazzi S.Bh
- Rahatlou S.Bn
- Rahbaran B.B
- Rahmat R.Ef
- Raics P.As
- Raidal M.X
- Rakness G.Dq
- Ralph D.El
- Ramirez Vargas J.E.Ev
- Rander J.Ab
- Ranjan K.Av
- Rappoccio S.Ep
- Raspereza A.Ak
- Rathjens D.Al
- Ratnikov F.Am
- Ratti S.P.Bk
- Raupach F.Ah
- Raymond D.M.Dj
- Razis P.A.U
- Rebane L.Cx
- Rebassoo F.Ej
- Redaelli N.Bh
- Redjimi R.Ey
- Redondo I.Cr
- Regnard S.Ac
- Reid I.D.Dk
- Reis T.F
- Reithler H.Ai
- Rekovic V.Cq
- Renker D.Cw
- Reucroft S.Ce
- Rezaei Hosseinabadi F.Az
- Ribeiro Cipriano P.M.Ak
- Riccardi C.Bk
- Ricci-Tam F.Dp
- Richardson C.Dn
- Richman J.Dt
- Rinkevicius A.Ea
- Rizzi A.Bm
- Roberts J.Ey
- Robmann P.Cy
- Robutti E.Bg
- Rodenburg M.Et
- Rodozov M.M
- Rodr\uedguez-Marrero A.Y.Cu
- Rodrigo T.Cu
- Rodrigues Antunes J.Ci
- Rodriguez J.L.Eb
- Roe J.Fd
- Rogan C.Du
- Rogerson S.Dj
- Roh Y.Bu
- Rohe T.Cw
- Rohlf J.Dn
- Rohringer H.B
- Roland B.D
- Roland C.El
- Roland G.El
- Rolandi G.Cv
- Romanowska-Rybinska K.Cg
- Romeo F.Bl
- Romero A.Bo
- Romero L.Cr
- Ron E.Ak
- Ronchese P.Bj
- Ronga F.J.Cy
- Rose A.Dj
- Rose A.Fd
- Rose K.Fc
- Rosowsky A.Ab
- Ross I.Fi
- Rossi A.M.Bc
- Rossini M.Cx
- Rougny R.D
- Rovelli C.Bn
- Rovelli T.Bc
- Rovere M.Cv
- Roy D.Aw
- Ruchti R.Es
- Ruiz Alvarez J.D.Af
- Ruiz-Jimeno A.Cu
- Rumerio P.Dm
- Rusack R.Em
- Rusakov S.V.Cn
- Ruspa M.Bo
- Russ J.Dv
- Ryckbosch D.G
- Ryd A.Dx
- Ryu G.Bv
- Ryu M.S.Bv
- Ryutin R.Cp
- Sabes D.Af
- Sacchi R.Bo
- Safarzadeh B.Az
- Safonov A.Fd
- Safronov G.Cm
- Saha A.Bl
- Sahin M. 6.Ak
- Saini L.K.Ei
- Saka H.Eu
- Sakharov A.Br
- Sakulin H.Cv
- Sakuma T.Fd
- Salazar Ibarguen H.A.Cb
- Salerno R.Ac
- Salfeld-Nebgen J.Ak
- Salur S.Fb
- Salva Diblen S.G
- Salvati E.Dx
- Salvini P.Bk
- Sammet J.Ah
- Sanabria J.C.Q
- Sanchez-Hernandez A.Bz
- Sander C.Al
- Sanders D.A.En
- Sanders S.Eh
- Sani M.Ds
- Santanastasio F.Bn
- Santaolalla J.K
- Santocchia A.Bl
- Santoro A.K
- Saoulidou N.Ao
- Sarangi T.Fi
- Sarkar S.Aw
- Sauvan J.B.Ac
- Savin A.Fi
- Savoy-Navarro A.Bm
- Savrin V.Co
- Saxena P.Ak
- Scarborough T.Dl
- Sch\ue4fer C.Cv
- Sch\uf6fbeck R.B
- Schael S.Ah
- Schettler H.Al
- Schizzi A.Bp
- Schleper P.Al
- Schlieckau E.Al
- Schmidt A.Al
- Schmidt R.Ak
- Schmitt M.Er
- Schmitz S.A.Ai
- Schnetzer S.Fb
- Schoerner-Sadenius T.Ak
- Schr\uf6der M.Ak
- Schwick C.Cv
- Scodellaro L.Cu
- Searle M.Dp
- Seez C.Dj
- Segala M.Do
- Seidel M.Al
- Seitz C.Ak
- Seixas J.Ci
- Sekaric J.Eh
- Sekmen S.Dd
- Selvaggi G.Bb
- Selvaggi M.H
- Semenov S.Cm
- Sen S.Ef
- Senkin S.Dh
- Seo H.Bw
- Serban A.T.Bm
- Seva T.F
- Sexton-Kennedy E.Dz
- Sgandurra L.Af
- Sguazzoni G.Be
- Shah M.A.Cf
- Shalhout S.Dp
- Sharan M.Aw
- Sharma A.Cv
- Sharma M.Ff
- Sharma S.Dz
- Sharma V.Av
- Sharma V.Ds
- Sharp P.Dj
- Shchutska L.Ea
- Sheldon P.Ff
- Shepherd-Themistocleous C.H.Di
- Shi X.Ew
- Shipsey I.Ew
- Shmatov S.Cj
- Shoaib M.Cf
- Shrestha S.Ei
- Shrinivas A.Dr
- Shukla P.Ax
- Shumeiko N.C
- Siegrist P.Cv
- Sigamani M.G
- Sikler F.Aq
- Silkworth C.Ee
- Silva P.Cv
- Silvers D.Ew
- Silvestris L.Bb
- Simon M.Cv
- Simon S.Ds
- Simonetto F.Bj
- Simonis H.J.Am
- Singh G.Bb
- Singh J.B.Au
- Singovsky A.Em
- Sinthuprasith T.Do
- Sirois Y.Ac
- Siroli G.P.Bc
- Sirunyan A.M.A
- Skatchkov N.Cj
- Skhirtladze N.Ei
- Skinnari L.Dx
- Skuja A.Ek
- Smirnov I.Ck
- Smirnov V.Cj
- Smith G.Et
- Smith J.Dp
- Smith J.G.Dw
- Smith V.J.Dh
- Smith W.H.Fi
- Snigirev A.Co
- Snook B.Ff
- Snow G.R.Eo
- Snowball M.Ea
- Soares M.S.Cr
- Sobol A.Cp
- Soffi L.Bn
- Sogut K.Dc
- Soha A.Dz
- Sola V.Al
- Solano A.Bo
- Somalwar S.Fb
- Son D.C.Br
- Song S.Bt
- Sonnenschein L.Ai
- Sordini V.Af
- Sorokin P.Dg
- Spagnolo P.Bm
- Spalding W.J.Dz
- Spanier S.Fc
- Spannagel S.Ak
- Speer T.Do
- Sperka D.Dn
- Sphicas P.Cv
- Spiegel L.Dz
- Spiezia A.Bl
- Spiga D.Cv
- Spiridonov A.Cm
- Spiropulu M.Du
- Squillacioti P.Bm
- Squires M.Dp
- Srimanobhas N.Db
- St. John J.Dn
- St\uf6ckli F.El
- Stadie H.Al
- Stahl A.Aj
- Staiano A.Bo
- Starodumov A.Cx
- Steggemann J.Cv
- Steinbr\ufcck G.Al
- Stenson K.Dw
- Stephans G.S.F.El
- Stickland D.Eu
- Stieger B.Cv
- Stiliaris E.Ao
- Stober F.M.Am
- Stolin V.Cm
- Stolp D.Dp
- Stone R.Fb
- Stoye M.Cv
- Stoykova S.M
- Stoynev S.Er
- Strauss J.B
- Stringer R.Eh
- Strobbe N.G
- Strom D.E
- Stuart D.Dt
- Stupak J.Ex
- Sturdy J.Fh
- Suarez Gonzalez J.C
- Suarez I.Fd
- Sudano E.Ds
- Sudhakar K.Ay
- Sudic L.T
- Sulak L.Dn
- Sulimov V.Ck
- Sultanov G.M
- Summers D.En
- Sumorok K.El
- Sumowidagdo S.Dr
- Sun W.Dx
- Sunar Cerci D.Dc
- Sung K.Er
- Surat U.E.Dd
- Suwonjandee N.Db
- Svintradze I.Ei
- Svyatkovskiy A.Ew
- Swain S.K.At
- Swanson J.Do
- Swartz M.Eg
- Symonds P.Dk
- Szillasi Z.Ar
- Szleper M.Cg
- Sznajder A.K
- Tabarelli de Fatis T.Bh
- Tadel M.Ds
- Takahashi M.Cx
- Takahashi Y.Cv
- Takasugi E.Dq
- Tali B.Dc
- Talvitie J.Aa
- Tambe N.Em
- Tamponi U.Bo
- Tan P.Ef
- Tao J.O
- Tapper A.Dj
- Taroni S.Cy
- Tatarinov A.Fd
- Taurok A.B
- Tavernier S.E
- Taylor L.Dz
- Tcholakov V.M
- Tenchini R.Bm
- Teo W.D.Dx
- Teodorescu L.Dk
- Teyssier D.Ai
- Th\ufcer S.Ai
- Thea A.Di
- Theofilatos K.Cx
- Thom J.Dx
- Thomas L.F
- Thomas S.Fb
- Thomassen P.Fb
- Thompson J.Dx
- Thyssen F.G
- Tiko A.X
- Timciuc V.Du
- Tiras E.Ef
- Titov M.Ab
- Tkaczyk S.Dz
- Tlisov D.Cl
- To W.Dt
- Tomalin I.R.Di
- Tonelli Manganote E.J.K
- Tonelli G.Bm
- Tonjes M.B.Ek
- Tonwar S.C.Ek
- Topakli H.Dc
- Topkar A.Ax
- Topsis-Giotis I.An
- Torassa E.Bj
- Toropin A.Cl
- Tosi M.Bj
- Tosi N.Bc
- Tosi S.Bg
- Tourtchanovitch L.Cp
- Traczyk P.Bn
- Tran N.V.Dz
- Travaglini R.Bc
- Treberer-Treberspurg W.B
- Treille D.Cv
- Tricomi A.Bd
- Trioss A.Bj
- Tripathi M.Dp
- Trocino D.Eq
- Trocsanyi Z.L.As
- Troendle D.Al
- Tropiano A.Be
- Troshin S.Cp
- Tsamalaidze Z.Ag
- Tsirou A.Cv
- Tu Y.Ds
- Tucker J.Dx
- Tully C.Eu
- Tumasyan A.A
- Tuo S.Ff
- Tuominen E.Z
- Tuominiemi J.Z
- Tuovinen E.Z
- Turkewitz J.Em
- Turner M.Dk
- Turner P.Ee
- Tuuva T.Aa
- Tuve C.Bd
- Tytgat M.G
- Tyurin N.Cp
- Tzeng Y.M.Da
- Ujvari B.As
- Ulmer K.A.Dw
- Ulrich R.Am
- Umer T.Bp
- Uplegger L.Dz
- Usai E.Al
- Uvarov L.Ck
- Uzunian A.Cp
- Vaandering E.W.Dz
- Valls N.Es
- Valuev V.Dq
- Van De Klundert M.D
- Van Doninck W.E
- Van Haevermaet H.D
- Van Hove P.Ad
- Van Mechelen P.D
- Van Mulders P.E
- Van Onsem G.P.E
- Van Remortel N.D
- Van Spilbeeck A.D
- Vander Donckt M.Af
- Vander Velde C.F
- Vanelderen L.Al
- Vanini S.Bj
- Vanlaer P.F
- Vardarl\u131 F.I.Df
- Varela J.Ci
- Varelas N.Ee
- Vargas Trevino A.D.R.Ak
- Vartak A.Ds
- Vavilov S.Ck
- Vazquez Acosta M.Dj
- Vazquez Valencia F.Ca
- Veelken C.Ac
- Veeraraghavan V.Ec
- Velasco M.Er
- Velicanu D.El
- Velkovska J.Ff
- Venditti R.Bb
- Ventura S.Bj
- Venturi A.Bm
- Verdier P.Af
- Verdini P.G.Bm
- Veres G.I.Cv
- Vergili M.Dc
- Vernieri C.Bm
- Verwilligen P.Bb
- Verzetti M.Cy
- Veszpremi V.Aq
- Vesztergombi G.Aq
- Veverka J.El
- Vidal Marono M.H
- Vidal R.Dz
- Vila I.Cu
- Vilar Cortabitarte R.Cu
- Vilela Pereira A.K
- Villella I.E
- Vinogradov A.Cn
- Virdee T.Dj
- Viret S.Af
- Vischia P.Ci
- Vishnevskiy D.Ez
- Vitulo P.Bk
- Vizan Garcia J.M.H
- Vlasov E.Cm
- Vlimant J.R.Cv
- Vogel H.Dv
- Volkov A.Cp
- Volobouev I.Fe
- Volpe R.Cz
- Vorobiev I.Dv
- Vorobyev A.Ck
- Vorobyev A.Ck
- Voutilainen M.Y
- Vuosalo C.Fi
- Vutova M.M
- W\uf6hri H.K.Cv
- W\ufcrthwein F.Ds
- Wagner S.R.Dw
- Wagner-Kuhr J.Am
- Walker M.Fb
- Wallny R.Cx
- Walsh R.Ak
- Waltenberger W.B
- Wang D.P
- Wang F.Ew
- Wang J.F
- Wang Q.Eh
- Wang R.-J.eq
- Wang X.O
- Wang Z.O
- Wardle N.Cv
- Wayand S.Am
- Wayne M.Es
- Weber H.A.Cx
- Weber H.Ah
- Weber M.Ai
- Weber M.Dq
- Weiler T.Am
- Weinberg M.Ec
- Welke C.Ds
- Wendland L.Z
- Weng Y.Dx
- Werner J.S.Eu
- West C.Dt
- Wetzel J.Ef
- Whitbeck A.Dz
- Whitmore J.Dz
- Wickramage N.Ay
- Wilbur S.Dp
- Wilken R.Da
- Wilkinson R.Du
- Williams T.Dh
- Wimpenny S.Dr
- Winer B.L.Et
- Winn D.Dy
- Winstrom L.Dx
- Wissing C.Ak
- Wittich P.Dx
- Wittmer B.Ah
- Wolf M.Es
- Wolf R.Am
- Wolfe H.Et
- Wollny H.Cv
- Wolszczak W.Ch
- Womersley W.J.Di
- Won S.Er
- Wood D.Eq
- Wood J.Fg
- Wood J.S.Eh
- Woodard A.Es
- Woods N.Fi
- Worm S.D.Di
- Wright D.Ej
- Wulsin H.W.Et
- Wulz C.-E.b
- Wyslouch B.El
- Xiao H.Af
- Xie S.Du
- Xie W.Ew
- Xu L.Ew
- Yagil A.Ds
- Yalvac M.Dd
- Yang F.Dz
- Yang M.El
- Yang Y.Cy
- Yazgan E.G
- Yelton J.Ea
- Yetkin T.Ef
- Yi K.Ef
- Yilmaz Y.Ac
- Yohay R.Dp
- Yoo H.D.Ew
- Yoo J.Ds
- Yoon A.S.El
- York A.Fc
- Yu I.Bw
- Yu S.S.Cz
- Yumiceva F.Ed
- Zabel J.Ey
- Zabi A.Ac
- Zablocki J.Ew
- Zaganidis N.G
- Zakaria M.Ea
- Zalewski P.Cg
- Zanetti A.Bp
- Zanetti M.El
- Zarubin A.Cj
- Zeinali M.Az
- Zenz S.C.Dj
- Zeuner W.D.Cv
- Zeyrek M.Dd
- Zhang J.Eq
- Zhang L.P
- Zheng Y.Ew
- Zhokin A.Cm
- Zhu R.Y.Du
- Zhukov V.Ah
- Zhukova V.El
- Zito G.Bb
- Zotto P.Bj
- Zou W.P
- Zsigmond A.J.Aq
- Zucchetta A.Bj
- Zuranski A.Eu
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2014
- Field of study
Searches for supersymmetry (SUSY) are presented based on the electroweak pair production of neutralinos and charginos, leading to decay channels with Higgs, Z, and W bosons and undetected lightest SUSY particles (LSPs). The data sample corresponds to an integrated luminosity of about 19.5 fb(-1) of proton-proton collisions at a center-of-mass energy of 8 TeV collected in 2012 with the CMS detector at the LHC. The main emphasis is neutralino pair production in which each neutralino decays either to a Higgs boson (h) and an LSP or to a Z boson and an LSP, leading to hh, hZ, and ZZ states with missing transverse energy (E-T(miss)). A second aspect is chargino-neutralino pair production, leading to hW states with E-T(miss). The decays of a Higgs boson to a bottom-quark pair, to a photon pair, and to final states with leptons are considered in conjunction with hadronic and leptonic decay modes of the Z and W bosons. No evidence is found for supersymmetric particles, and 95% confidence level upper limits are evaluated for the respective pair production cross sections and for neutralino and chargino mass values
Memorandum submitted to the Committee of the East African Stud Book on the recognition of the Boran, an indigenous cattle type of East Africa, as a breed for purposes of entry into and registration in the East African Stud Book
- Author
- Publication venue
- Publication date
- 08/02/2016
- Field of study
The improvement of cattle in British colonial territories in Africa
- Author
- Publication venue
- Publication date
- 08/02/2016
- Field of study
The monograph reports activities related to cattle improvement in the British colonial territories in Africa. It consists of four parts. Part one presents the general background to the improvement of cattle in the territories describing ecological conditions, economic and social significance of cattle, environmental and animal husbandry conditions. Part two follows with discussions on methods adopted by colonial governments for the improvement of cattle. This part outlines the objectives of cattle improvement programmes; methods of improvement involving selection of indigenous stock and introduction of exotic breeds; adaptability of the indigenous breeds to various environmental conditions and the government stock farms and improvement centres. Part three details some general principles of cattle improvement in tropical Africa focusing on grading-up processes and their applicability in the field. Part four presents specific problems of cattle improvement in each of the colonial territories. There are pictographic illustrations throughout the book, appendices and bibliography at the end
Improved short-channel FET performance with virtual extensions
- Publication venue
- 'Institute of Electrical and Electronics Engineers (IEEE)'
- Publication date
- Field of study
- …